Package org.bouncycastle.crypto.engines
Class ARIAEngine
- java.lang.Object
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- org.bouncycastle.crypto.engines.ARIAEngine
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- All Implemented Interfaces:
BlockCipher
public class ARIAEngine extends java.lang.Object implements BlockCipher
RFC 5794. ARIA is a 128-bit block cipher with 128-, 192-, and 256-bit keys.
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Field Summary
Fields Modifier and Type Field Description protected static int
BLOCK_SIZE
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Constructor Summary
Constructors Constructor Description ARIAEngine()
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Method Summary
All Methods Static Methods Instance Methods Concrete Methods Modifier and Type Method Description protected static void
A(byte[] z)
protected static void
FE(byte[] D, byte[] RK)
protected static void
FO(byte[] D, byte[] RK)
java.lang.String
getAlgorithmName()
Return the name of the algorithm the cipher implements.int
getBlockSize()
Return the block size for this cipher (in bytes).void
init(boolean forEncryption, CipherParameters params)
Initialise the cipher.protected static byte[][]
keySchedule(boolean forEncryption, byte[] K)
protected static void
keyScheduleRound(byte[] rk, byte[] w, byte[] wr, int n)
int
processBlock(byte[] in, int inOff, byte[] out, int outOff)
Process one block of input from the array in and write it to the out array.void
reset()
Reset the cipher.protected static void
reverseKeys(byte[][] keys)
protected static byte
SB1(byte x)
protected static byte
SB2(byte x)
protected static byte
SB3(byte x)
protected static byte
SB4(byte x)
protected static void
SL1(byte[] z)
protected static void
SL2(byte[] z)
protected static void
xor(byte[] z, byte[] x)
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Field Detail
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BLOCK_SIZE
protected static final int BLOCK_SIZE
- See Also:
- Constant Field Values
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Method Detail
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init
public void init(boolean forEncryption, CipherParameters params) throws java.lang.IllegalArgumentException
Description copied from interface:BlockCipher
Initialise the cipher.- Specified by:
init
in interfaceBlockCipher
- Parameters:
forEncryption
- if true the cipher is initialised for encryption, if false for decryption.params
- the key and other data required by the cipher.- Throws:
java.lang.IllegalArgumentException
- if the params argument is inappropriate.
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getAlgorithmName
public java.lang.String getAlgorithmName()
Description copied from interface:BlockCipher
Return the name of the algorithm the cipher implements.- Specified by:
getAlgorithmName
in interfaceBlockCipher
- Returns:
- the name of the algorithm the cipher implements.
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getBlockSize
public int getBlockSize()
Description copied from interface:BlockCipher
Return the block size for this cipher (in bytes).- Specified by:
getBlockSize
in interfaceBlockCipher
- Returns:
- the block size for this cipher in bytes.
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processBlock
public int processBlock(byte[] in, int inOff, byte[] out, int outOff) throws DataLengthException, java.lang.IllegalStateException
Description copied from interface:BlockCipher
Process one block of input from the array in and write it to the out array.- Specified by:
processBlock
in interfaceBlockCipher
- Parameters:
in
- the array containing the input data.inOff
- offset into the in array the data starts at.out
- the array the output data will be copied into.outOff
- the offset into the out array the output will start at.- Returns:
- the number of bytes processed and produced.
- Throws:
DataLengthException
- if there isn't enough data in in, or space in out.java.lang.IllegalStateException
- if the cipher isn't initialised.
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reset
public void reset()
Description copied from interface:BlockCipher
Reset the cipher. After resetting the cipher is in the same state as it was after the last init (if there was one).- Specified by:
reset
in interfaceBlockCipher
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A
protected static void A(byte[] z)
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FE
protected static void FE(byte[] D, byte[] RK)
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FO
protected static void FO(byte[] D, byte[] RK)
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keySchedule
protected static byte[][] keySchedule(boolean forEncryption, byte[] K)
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keyScheduleRound
protected static void keyScheduleRound(byte[] rk, byte[] w, byte[] wr, int n)
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reverseKeys
protected static void reverseKeys(byte[][] keys)
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SB1
protected static byte SB1(byte x)
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SB2
protected static byte SB2(byte x)
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SB3
protected static byte SB3(byte x)
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SB4
protected static byte SB4(byte x)
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SL1
protected static void SL1(byte[] z)
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SL2
protected static void SL2(byte[] z)
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xor
protected static void xor(byte[] z, byte[] x)
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